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On the effects of ring oscillator length and hardware Trojan size on an FPGA-based implementation of AES

机译:环形振荡器长度和硬件木马大小对基于FPGA的AES实现的影响

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摘要

The recent trend in a wide range of application domains, from the Internet of Things to space communications, is to deploy computing systems on FPGA devices. Modern FPGA technology encompasses billions of gates integrated in a single chip. In this setting, it is easier for an attacker to inject or introduce additional, malicious logic or to modify an existing one in order to cause abnormal behavior. As a result, new security requirements arise from the design process perspective. A Ring Oscillator (RO) is an established technique to realize a digital sensor in FPGA designs to detect additional or modified malicious circuit, i.e., a hardware Trojan horse or simply a Trojan. Variable-length Ring Oscillators (VLROs) were proposed in the literature as an advanced detection mechanism for run-time configuration of RO length to avoid bypassing. Here, we expand VLROs effectiveness studies in two families of Trojans (combinational and sequential) and Trojans of varying size. We analyze the effect of the Trojan size and the length of the RO on the ability to detect malicious logic injected in a reference FPGA implementation of the AES cryptographic algorithm. (C) 2017 Elsevier B.V. All rights reserved.
机译:从物联网到空间通信,广泛的应用领域中的最新趋势是在FPGA设备上部署计算系统。现代FPGA技术包含集成在单个芯片中的数十亿个门。在这种情况下,攻击者更容易注入或引入其他恶意逻辑或修改现有逻辑,以引起异常行为。结果,从设计过程的角度提出了新的安全要求。环形振荡器(RO)是一种成熟的技术,可以在FPGA设计中实现数字传感器,以检测其他或经过修改的恶意电路,即硬件特洛伊木马或仅是特洛伊木马。文献中提出了变长环形振荡器(VLRO)作为RO长度运行时配置以避免旁路的高级检测机制。在这里,我们将VLRO的有效性研究扩展到两个系列的特洛伊木马(组合和顺序)和大小不同的特洛伊木马中。我们分析了特洛伊木马大小和RO的长度对检测在AES加密算法的参考FPGA实现中注入的恶意逻辑的能力的影响。 (C)2017 Elsevier B.V.保留所有权利。

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